Characteristics of Polyurethane Elastome with Non-polar and ester soft-segment blend

碩士 === 萬能科技大學 === 材料科學與工程研究所在職專班 === 103 === Nonpolar-based Plyurethane compared with polyester- and polyether-baesd Polyurethane, generally have superior hydrolytic stability, lower moisture permeability, higher oxidative stability, and improved low temperature. However, those Nonpolar-based Plyure...

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Main Authors: TSAI, KUANG-FU, 蔡光富
Other Authors: Hung Yi Tsai
Format: Others
Language:zh-TW
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/73878693870196073977
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spelling ndltd-TW-103VNU011590012016-08-19T04:10:09Z http://ndltd.ncl.edu.tw/handle/73878693870196073977 Characteristics of Polyurethane Elastome with Non-polar and ester soft-segment blend 非極性與酯型軟鏈節混合之聚氨基甲酸酯彈性體性質 TSAI, KUANG-FU 蔡光富 碩士 萬能科技大學 材料科學與工程研究所在職專班 103 Nonpolar-based Plyurethane compared with polyester- and polyether-baesd Polyurethane, generally have superior hydrolytic stability, lower moisture permeability, higher oxidative stability, and improved low temperature. However, those Nonpolar-based Plyurethanes materials exhibit a lower tensile property because it is lack of strain-induced crystallization. In this study, a Nonpolar-based polyurethane copolymer with hydrolytic and thermal stability will be synthesized using of two- step method. The results shown that the tensile strength of the copolymer was improved by the PCL polyol incorporated in the polyurethane copolymer that used PRIPLAST® as the soft segmen. Furthermore, the copolymers have two characteristics of phase transition including the PRIPLAST® and PCL soft segments, and have three stages of degradation, which are associated with the soft and hard segment compositions for the phase transition and degradation. Hung Yi Tsai 蔡鴻宜 2015 學位論文 ; thesis 42 zh-TW
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description 碩士 === 萬能科技大學 === 材料科學與工程研究所在職專班 === 103 === Nonpolar-based Plyurethane compared with polyester- and polyether-baesd Polyurethane, generally have superior hydrolytic stability, lower moisture permeability, higher oxidative stability, and improved low temperature. However, those Nonpolar-based Plyurethanes materials exhibit a lower tensile property because it is lack of strain-induced crystallization. In this study, a Nonpolar-based polyurethane copolymer with hydrolytic and thermal stability will be synthesized using of two- step method. The results shown that the tensile strength of the copolymer was improved by the PCL polyol incorporated in the polyurethane copolymer that used PRIPLAST® as the soft segmen. Furthermore, the copolymers have two characteristics of phase transition including the PRIPLAST® and PCL soft segments, and have three stages of degradation, which are associated with the soft and hard segment compositions for the phase transition and degradation.
author2 Hung Yi Tsai
author_facet Hung Yi Tsai
TSAI, KUANG-FU
蔡光富
author TSAI, KUANG-FU
蔡光富
spellingShingle TSAI, KUANG-FU
蔡光富
Characteristics of Polyurethane Elastome with Non-polar and ester soft-segment blend
author_sort TSAI, KUANG-FU
title Characteristics of Polyurethane Elastome with Non-polar and ester soft-segment blend
title_short Characteristics of Polyurethane Elastome with Non-polar and ester soft-segment blend
title_full Characteristics of Polyurethane Elastome with Non-polar and ester soft-segment blend
title_fullStr Characteristics of Polyurethane Elastome with Non-polar and ester soft-segment blend
title_full_unstemmed Characteristics of Polyurethane Elastome with Non-polar and ester soft-segment blend
title_sort characteristics of polyurethane elastome with non-polar and ester soft-segment blend
publishDate 2015
url http://ndltd.ncl.edu.tw/handle/73878693870196073977
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